A novel gene for Usher syndrome type 2: mutations in the long isoform of whirlin are associated with retinitis pigmentosa and sensorineural hearing loss
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- 15 December 2006
- journal article
- Published by Springer Nature in Human Genetics
- Vol. 121 (2) , 203-211
- https://doi.org/10.1007/s00439-006-0304-0
Abstract
Usher syndrome is an autosomal recessive condition characterized by sensorineural hearing loss, variable vestibular dysfunction, and visual impairment due to retinitis pigmentosa (RP). The seven proteins that have been identified for Usher syndrome type 1 (USH1) and type 2 (USH2) may interact in a large protein complex. In order to identify novel USH genes, we followed a candidate strategy, assuming that mutations in proteins interacting with this “USH network” may cause Usher syndrome as well. The DFNB31 gene encodes whirlin, a PDZ scaffold protein with expression in both hair cell stereocilia and retinal photoreceptor cells. Whirlin represents an excellent candidate for USH2 because it binds to Usherin (USH2A) and VLGR1b (USH2C). Genotyping of microsatellite markers specific for the DFNB31 gene locus on chromosome 9q32 was performed in a German USH2 family that had been excluded for all known USH loci. Patients showed common haplotypes. Sequence analysis of DFNB31 revealed compound heterozygosity for a nonsense mutation, p.Q103X, in exon 1, and a mutation in the splice donor site of exon 2, c.837+1G>A. DFNB31 mutations appear to be a rare cause of Usher syndrome, since no mutations were identified in an additional 96 USH2 patients. While mutations in the C-terminal half of whirlin have previously been reported in non-syndromic deafness (DFNB31), both alterations identified in our USH2 family affect the long protein isoform. We propose that mutations causing Usher syndrome are probably restricted to exons 1–6 that are specific for the long isoform and probably crucial for retinal function. We describe a novel genetic subtype for Usher syndrome, which we named USH2D and which is caused by mutations in whirlin. Moreover, this is the first case of USH2 that is allelic to non-syndromic deafness.Keywords
This publication has 24 references indexed in Scilit:
- The DFNB31 gene product whirlin connects to the Usher protein network in the cochlea and retina by direct association with USH2A and VLGR1Human Molecular Genetics, 2006
- Myosin-XVa is required for tip localization of whirlin and differential elongation of hair-cell stereociliaNature Cell Biology, 2005
- Myosin XVa and whirlin, two deafness gene products required for hair bundle growth, are located at the stereocilia tips and interact directlyHuman Molecular Genetics, 2004
- Mutant analysis reveals whirlin as a dynamic organizer in the growing hair cell stereociliumHuman Molecular Genetics, 2004
- USH2A Mutation analysis in 70 Dutch families with Usher syndrome type IIHuman Mutation, 2004
- Defects in whirlin, a PDZ domain molecule involved in stereocilia elongation, cause deafness in the whirler mouse and families with DFNB31Nature Genetics, 2003
- A Mutation ofPCDH15among Ashkenazi Jews with the Type 1 Usher SyndromeNew England Journal of Medicine, 2003
- DFNB31, a recessive form of sensorineural hearing loss, maps to chromosome 9q32-34European Journal of Human Genetics, 2002
- The prevalence of Usher syndrome and other retinal dystrophy‐hearing impairment associationsClinical Genetics, 1997
- Usher syndrome in the city of Birmingham---prevalence and clinical classificationBritish Journal of Ophthalmology, 1997